90WMoNiFe alloy plates are widely used in many fields due to their unique physical and chemical properties, such as low expansion coefficient, high thermal conductivity and good red hardness. The following are some of the main application scenarios of 90WMoNiFe alloy plates:
Die-casting mold field
Due to its excellent high temperature resistance and wear resistance, 90WMoNiFe alloy plates are often used to manufacture high-precision and high-durability die-casting molds. These molds can withstand high temperature and high pressure working environments to ensure the stability of the production process and the quality of the products.
Hot forging valve field
In the manufacture of hot forging valves, 90WMoNiFe alloy plates as anvil materials can maintain good red hardness and thermal conductivity, thereby improving the service life and working efficiency of the anvil.
Aerospace field
The aerospace field has extremely high requirements for materials, requiring materials to have characteristics such as light weight, high strength and high temperature resistance. 90WMoNiFe alloy plates are ideal materials that meet these requirements and can be used to manufacture key components such as engines, turbine blades, and combustion chambers.
Energy field
In the energy field, especially in the nuclear energy field, 90WMoNiFe alloy plates can be used to manufacture structural materials and fuel elements for nuclear reactors, providing technical support for the development and utilization of nuclear energy.
Chemical field
Due to its excellent corrosion resistance, 90WMoNiFe alloy plates are often used to manufacture corrosion-resistant equipment and pipelines for handling various corrosive media.
In addition, 90WMoNiFe alloy plates can also be used in other fields that require high strength, high hardness and good thermal stability, such as electronics, automobiles, national defense, military industry, and navigation.
Different application scenarios may have different performance requirements for 90WMoNiFe alloy plates, so they need to be customized and optimized according to actual needs when selected and used. At the same time, in order to ensure the quality and performance of the materials, it is recommended to select a reputable alloy material manufacturer and follow the relevant production and use standards.
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